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消费者对采矿能力的责任:以日本为例对稀缺加权金属足迹的分解分析

Responsibility of consumers for mining capacity: decomposition analysis of scarcity-weighted metal footprints in the case of Japan.

作者信息

Yokoi Ryosuke, Nansai Keisuke, Nakajima Kenichi, Watari Takuma, Motoshita Masaharu

机构信息

Research Institute of Science for Safety and Sustainability, National Institute of Advanced Industrial Science and Technology (AIST), 16-1 Onogawa, Tsukuba 305-8569, Japan.

Center for Material Cycles and Waste Management Research, National Institute for Environmental Studies, 16-2 Onogawa, Tsukuba 305-8506, Japan.

出版信息

iScience. 2020 Dec 31;24(1):102025. doi: 10.1016/j.isci.2020.102025. eCollection 2021 Jan 22.

Abstract

Metal-consuming countries depend on mining activity in other countries, which may impose potential pressure on sustainable metal supply. This study proposes an approach to analyze the responsibility of consuming countries for mining activities based on the decomposition analysis of scarcity-weighted metal footprints (S-MFs) of Japan. The application results to the Japanese final demand (iron, copper, and nickel) demonstrate the significance of country- and metal-specific conditions in terms of metal footprints and mining capacity in assessing the responsibility of consuming countries. Consuming countries can identify influential factors to reduce their S-MFs based on the decomposition analysis by discriminating the directly controllable and uncontrollable factors for consuming countries, which can help to plan different countermeasures depending on the types of the identified influential factors. The proposed approach supports metal-consuming countries to determine the effective options for reducing the responsibility for the sustainability of metal supply.

摘要

金属消费国依赖其他国家的采矿活动,这可能给金属的可持续供应带来潜在压力。本研究基于对日本稀缺加权金属足迹(S-MFs)的分解分析,提出了一种分析消费国对采矿活动责任的方法。对日本最终需求(铁、铜和镍)的应用结果表明,在评估消费国责任时,特定国家和特定金属的条件对于金属足迹和采矿能力具有重要意义。消费国可以通过区分消费国直接可控和不可控因素,基于分解分析确定影响其S-MFs的因素,这有助于根据所确定的影响因素类型制定不同的应对措施。所提出的方法有助于金属消费国确定有效方案,以减轻其对金属供应可持续性的责任。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cc5/7809504/a09ca3fa291f/fx1.jpg

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